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f408bb5d86
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f408bb5d86 | ||
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314ae9c4cb |
4 changed files with 269 additions and 63 deletions
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@ -22,13 +22,66 @@ use super::Agent;
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// Agent logging — shared by Mind and CLI paths
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// ---------------------------------------------------------------------------
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#[derive(Clone, serde::Serialize)]
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/// Stats from a single run.
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#[derive(Clone, Default, serde::Serialize, serde::Deserialize)]
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pub struct RunStats {
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pub messages: usize,
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pub tool_calls: usize,
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pub tool_failures: usize,
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pub tool_calls_by_type: HashMap<String, usize>,
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}
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/// Per-tool accumulated stats.
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#[derive(Clone, Default, serde::Serialize, serde::Deserialize)]
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pub struct ToolStats {
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pub last: usize,
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pub ewma: f64,
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pub total: usize,
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}
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/// Persisted stats for an agent (survives restarts).
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#[derive(Clone, Default, serde::Serialize, serde::Deserialize)]
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pub struct PersistedStats {
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pub runs: usize,
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pub last_stats: Option<RunStats>,
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/// Per-tool-type stats: last, ewma, total.
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pub by_tool: HashMap<String, ToolStats>,
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/// Failed calls stats.
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pub failures: ToolStats,
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}
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fn stats_path() -> std::path::PathBuf {
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dirs::home_dir().unwrap_or_default()
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.join(".consciousness/agent-stats.json")
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}
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static AGENT_STATS: std::sync::OnceLock<std::sync::Mutex<HashMap<String, PersistedStats>>> =
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std::sync::OnceLock::new();
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fn stats_map() -> &'static std::sync::Mutex<HashMap<String, PersistedStats>> {
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AGENT_STATS.get_or_init(|| {
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let map: HashMap<String, PersistedStats> = std::fs::read_to_string(stats_path()).ok()
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.and_then(|s| serde_json::from_str(&s).ok())
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.unwrap_or_default();
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std::sync::Mutex::new(map)
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})
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}
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pub fn get_stats(name: &str) -> PersistedStats {
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stats_map().lock().ok()
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.and_then(|m| m.get(name).cloned())
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.unwrap_or_default()
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}
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pub fn set_stats(name: &str, stats: PersistedStats) {
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if let Ok(mut map) = stats_map().lock() {
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map.insert(name.to_string(), stats);
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if let Ok(json) = serde_json::to_string_pretty(&*map) {
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let _ = std::fs::write(stats_path(), json);
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}
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}
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}
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/// Save agent conversation to JSON log file.
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/// Used by both mind-run agents and CLI-run agents.
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pub async fn save_agent_log(name: &str, agent: &std::sync::Arc<Agent>) -> RunStats {
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@ -57,6 +110,7 @@ fn compute_run_stats(conversation: &[super::context::AstNode]) -> RunStats {
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let mut messages = 0usize;
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let mut tool_calls = 0usize;
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let mut tool_failures = 0usize;
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let mut by_type: HashMap<String, usize> = HashMap::new();
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for node in conversation {
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@ -64,16 +118,27 @@ fn compute_run_stats(conversation: &[super::context::AstNode]) -> RunStats {
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messages += 1;
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for child in children {
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if let AstNode::Leaf(leaf) = child {
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if let NodeBody::ToolCall { name, .. } = leaf.body() {
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match leaf.body() {
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NodeBody::ToolCall { name, .. } => {
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tool_calls += 1;
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*by_type.entry(name.to_string()).or_default() += 1;
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}
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NodeBody::ToolResult(text) => {
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// Detect failures from error patterns in result
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let t = text.trim_start();
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if t.starts_with("Error") || t.starts_with("error:") ||
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t.starts_with("Failed") || t.contains("not found") {
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tool_failures += 1;
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}
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}
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_ => {}
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}
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}
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}
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}
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}
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RunStats { messages, tool_calls, tool_calls_by_type: by_type }
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RunStats { messages, tool_calls, tool_failures, tool_calls_by_type: by_type }
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}
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// ---------------------------------------------------------------------------
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@ -96,8 +161,11 @@ pub struct AutoAgent {
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pub current_phase: String,
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pub turn: usize,
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pub enabled: bool,
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pub temperature: f32,
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pub priority: i32,
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}
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/// Per-run conversation backend — wraps a forked agent.
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struct Backend(std::sync::Arc<Agent>);
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@ -160,14 +228,16 @@ impl AutoAgent {
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name: String,
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tools: Vec<agent_tools::Tool>,
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steps: Vec<AutoStep>,
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_temperature: f32,
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_priority: i32,
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temperature: f32,
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priority: i32,
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) -> Self {
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Self {
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name, tools, steps,
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current_phase: String::new(),
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turn: 0,
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enabled: true,
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temperature,
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priority,
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}
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}
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@ -203,7 +273,8 @@ impl AutoAgent {
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let mut st = agent.state.lock().await;
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st.provenance = format!("standalone:{}", self.name);
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st.tools = self.tools.clone();
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st.priority = Some(10);
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st.temperature = self.temperature;
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st.priority = Some(self.priority);
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}
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let mut backend = Backend(agent.clone());
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@ -242,6 +313,36 @@ impl AutoAgent {
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result
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}
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/// Update stats after a run completes. Called with the stats from save_agent_log.
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pub fn update_stats(&self, run_stats: RunStats) {
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const ALPHA: f64 = 0.3;
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let old = get_stats(&self.name);
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// Update per-tool stats
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let mut by_tool = old.by_tool;
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for (tool, count) in &run_stats.tool_calls_by_type {
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let entry = by_tool.entry(tool.clone()).or_default();
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entry.last = *count;
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entry.ewma = ALPHA * (*count as f64) + (1.0 - ALPHA) * entry.ewma;
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entry.total += count;
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}
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// Update failure stats
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let failures = ToolStats {
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last: run_stats.tool_failures,
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ewma: ALPHA * (run_stats.tool_failures as f64) + (1.0 - ALPHA) * old.failures.ewma,
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total: old.failures.total + run_stats.tool_failures,
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};
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let new = PersistedStats {
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runs: old.runs + 1,
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last_stats: Some(run_stats),
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by_tool,
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failures,
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};
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set_stats(&self.name, new);
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}
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async fn run_with_backend(
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&mut self,
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backend: &mut Backend,
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@ -294,6 +294,7 @@ pub struct SubconsciousSnapshot {
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pub enabled: bool,
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pub current_phase: String,
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pub turn: usize,
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pub runs: usize,
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pub last_run_secs_ago: Option<f64>,
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/// Shared handle to the forked agent — UI locks to read entries.
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pub forked_agent: Option<Arc<crate::agent::Agent>>,
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@ -303,6 +304,9 @@ pub struct SubconsciousSnapshot {
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pub state: std::collections::BTreeMap<String, String>,
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/// Recent store activity for this agent: (key, timestamp), newest first.
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pub history: Vec<(String, i64)>,
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pub last_stats: Option<crate::agent::oneshot::RunStats>,
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pub tool_calls_ewma: f64,
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pub tool_failures_ewma: f64,
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}
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struct SubconsciousAgent {
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@ -361,17 +365,23 @@ impl SubconsciousAgent {
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}
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fn snapshot(&self, state: &std::collections::BTreeMap<String, String>, history: Vec<(String, i64)>) -> SubconsciousSnapshot {
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let stats = crate::agent::oneshot::get_stats(&self.name);
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let tool_calls_ewma: f64 = stats.by_tool.values().map(|t| t.ewma).sum();
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SubconsciousSnapshot {
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name: self.name.clone(),
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running: self.is_running(),
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enabled: self.auto.enabled,
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current_phase: self.auto.current_phase.clone(),
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turn: self.auto.turn,
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runs: stats.runs,
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last_run_secs_ago: self.last_run.map(|t| t.elapsed().as_secs_f64()),
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forked_agent: self.forked_agent.clone(),
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fork_point: self.fork_point,
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state: state.clone(),
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history,
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last_stats: stats.last_stats.clone(),
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tool_calls_ewma,
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tool_failures_ewma: stats.failures.ewma,
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}
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}
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}
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@ -477,7 +487,7 @@ impl Subconscious {
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any_finished = true;
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let (auto_back, result) = handle.await.unwrap_or_else(
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|e| (AutoAgent::new(String::new(), vec![], vec![], 0.0, 0),
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|e| (AutoAgent::new(String::new(), vec![], vec![], 0.6, 0),
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Err(format!("task panicked: {}", e))));
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self.agents[i].auto = auto_back;
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@ -576,7 +586,7 @@ impl Subconscious {
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self.agents[i].last_trigger_bytes = conversation_bytes;
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let auto = std::mem::replace(&mut self.agents[i].auto,
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AutoAgent::new(String::new(), vec![], vec![], 0.0, 0));
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AutoAgent::new(String::new(), vec![], vec![], 0.6, 0));
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to_run.push((i, auto));
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}
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@ -596,9 +606,10 @@ impl Subconscious {
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{
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let mut st = forked.state.lock().await;
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st.provenance = auto.name.clone();
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st.temperature = auto.temperature;
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// Surface agent gets near-interactive priority;
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// other subconscious agents get lower priority.
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st.priority = Some(if auto.name == "surface" { 1 } else { 2 });
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st.priority = Some(if auto.name == "surface" { 1 } else { auto.priority });
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}
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let fork_point = forked.context.lock().await.conversation().len();
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@ -614,7 +625,8 @@ impl Subconscious {
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self.agents[idx].handle = Some(tokio::spawn(async move {
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let result = auto.run_forked_shared(&forked, &keys, &st, &recent).await;
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crate::agent::oneshot::save_agent_log(&auto.name, &forked).await;
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let stats = crate::agent::oneshot::save_agent_log(&auto.name, &forked).await;
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auto.update_stats(stats);
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(auto, result)
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}));
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}
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@ -34,12 +34,10 @@ struct UnconsciousAgent {
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name: String,
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enabled: bool,
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auto: AutoAgent,
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handle: Option<tokio::task::JoinHandle<(AutoAgent, Result<String, String>, RunStats)>>,
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handle: Option<tokio::task::JoinHandle<(AutoAgent, Result<String, String>)>>,
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/// Shared agent handle — UI locks to read context live.
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pub agent: Option<std::sync::Arc<crate::agent::Agent>>,
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last_run: Option<Instant>,
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runs: usize,
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last_stats: Option<RunStats>,
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}
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impl UnconsciousAgent {
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@ -64,6 +62,8 @@ pub struct UnconsciousSnapshot {
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pub last_stats: Option<RunStats>,
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/// Recent store activity for this agent: (key, timestamp), newest first.
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pub history: Vec<(String, i64)>,
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pub tool_calls_ewma: f64,
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pub tool_failures_ewma: f64,
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}
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pub struct Unconscious {
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@ -107,8 +107,6 @@ impl Unconscious {
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handle: None,
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agent: None,
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last_run: None,
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runs: 0,
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last_stats: None,
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});
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}
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agents.sort_by(|a, b| a.name.cmp(&b.name));
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@ -144,15 +142,19 @@ impl Unconscious {
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self.agents.iter().map(|a| {
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let history = store.map(|st| st.recent_by_provenance(&a.name, 30))
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.unwrap_or_default();
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let stats = crate::agent::oneshot::get_stats(&a.name);
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let tool_calls_ewma: f64 = stats.by_tool.values().map(|t| t.ewma).sum();
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UnconsciousSnapshot {
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name: a.name.clone(),
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running: a.is_running(),
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enabled: a.enabled,
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runs: a.runs,
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runs: stats.runs,
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last_run_secs_ago: a.last_run.map(|t| t.elapsed().as_secs_f64()),
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agent: a.agent.clone(),
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last_stats: a.last_stats.clone(),
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last_stats: stats.last_stats.clone(),
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history,
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tool_calls_ewma,
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tool_failures_ewma: stats.failures.ewma,
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}
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}).collect()
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}
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@ -180,15 +182,13 @@ impl Unconscious {
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if agent.handle.as_ref().is_some_and(|h| h.is_finished()) {
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let handle = agent.handle.take().unwrap();
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agent.last_run = Some(Instant::now());
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agent.runs += 1;
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// Get the AutoAgent back from the finished task
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// Get the AutoAgent back from the finished task (stats already updated)
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match handle.now_or_never() {
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Some(Ok((auto_back, result, stats))) => {
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Some(Ok((auto_back, result))) => {
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agent.auto = auto_back;
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agent.last_stats = Some(stats);
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match result {
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Ok(_) => dbglog!("[unconscious] {} completed (run {})",
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agent.name, agent.runs),
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agent.name, crate::agent::oneshot::get_stats(&agent.name).runs),
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Err(e) => dbglog!("[unconscious] {} failed: {}", agent.name, e),
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}
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}
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@ -244,7 +244,7 @@ impl Unconscious {
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// Swap auto out, replace steps with resolved prompts
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let mut auto = std::mem::replace(&mut self.agents[idx].auto,
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AutoAgent::new(String::new(), vec![], vec![], 0.0, 0));
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AutoAgent::new(String::new(), vec![], vec![], 0.6, 0));
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let orig_steps = std::mem::replace(&mut auto.steps,
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batch.steps.iter().map(|s| AutoStep {
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prompt: s.prompt.clone(),
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@ -293,7 +293,8 @@ impl Unconscious {
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{
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let mut st = agent.state.lock().await;
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st.provenance = auto.name.clone();
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st.priority = Some(10);
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st.priority = Some(auto.priority);
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st.temperature = auto.temperature;
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}
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self.agents[idx].agent = Some(agent.clone());
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@ -301,8 +302,9 @@ impl Unconscious {
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self.agents[idx].handle = Some(tokio::spawn(async move {
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let result = auto.run_shared(&agent).await;
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let stats = crate::agent::oneshot::save_agent_log(&auto.name, &agent).await;
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auto.update_stats(stats);
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auto.steps = orig_steps;
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(auto, result, stats)
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(auto, result)
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}));
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}
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}
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|
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@ -18,10 +18,10 @@ use super::{App, ScreenView, screen_legend};
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use super::widgets::{SectionTree, SectionView, section_to_view, pane_block_focused, tree_legend, format_age, format_ts_age};
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#[derive(Clone, Copy, PartialEq)]
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enum Pane { Agents, Outputs, History, Context }
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enum Pane { Agents, Outputs, Stats, History, Context }
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// Clockwise: top-left → right → bottom-left → middle-left
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const PANE_ORDER: &[Pane] = &[Pane::Agents, Pane::Context, Pane::History, Pane::Outputs];
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const PANE_ORDER: &[Pane] = &[Pane::Agents, Pane::Context, Pane::History, Pane::Stats, Pane::Outputs];
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pub(crate) struct SubconsciousScreen {
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focus: Pane,
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@ -29,6 +29,7 @@ pub(crate) struct SubconsciousScreen {
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output_tree: SectionTree,
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context_tree: SectionTree,
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history_scroll: super::scroll_pane::ScrollPaneState,
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stats_scroll: super::scroll_pane::ScrollPaneState,
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}
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impl SubconsciousScreen {
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@ -41,6 +42,7 @@ impl SubconsciousScreen {
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output_tree: SectionTree::new(),
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context_tree: SectionTree::new(),
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history_scroll: super::scroll_pane::ScrollPaneState::new(),
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stats_scroll: super::scroll_pane::ScrollPaneState::new(),
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}
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}
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@ -87,6 +89,13 @@ impl ScreenView for SubconsciousScreen {
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_ => {}
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}
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Pane::Outputs => self.output_tree.handle_nav(code, &output_sections, area.height),
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Pane::Stats => match code {
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KeyCode::Up => self.stats_scroll.scroll_up(3),
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KeyCode::Down => self.stats_scroll.scroll_down(3),
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KeyCode::PageUp => self.stats_scroll.scroll_up(20),
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KeyCode::PageDown => self.stats_scroll.scroll_down(20),
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_ => {}
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}
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Pane::History => match code {
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KeyCode::Up => self.history_scroll.scroll_up(3),
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KeyCode::Down => self.history_scroll.scroll_down(3),
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@ -106,7 +115,7 @@ impl ScreenView for SubconsciousScreen {
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Constraint::Percentage(62),
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]).areas(area);
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// Left column: agent list (top) | outputs (middle) | history (bottom, main)
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// Left column: agent list | outputs | stats | history
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let unc_count = if app.unconscious_state.is_empty() { 0 }
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else { app.unconscious_state.len() + 1 }; // +1 for separator
|
||||
let agent_count = (app.agent_state.len() + unc_count).max(1) as u16;
|
||||
|
|
@ -114,15 +123,21 @@ impl ScreenView for SubconsciousScreen {
|
|||
let output_lines = app.agent_state.get(self.selected())
|
||||
.map(|s| s.state.values().map(|v| v.lines().count() + 1).sum::<usize>())
|
||||
.unwrap_or(0);
|
||||
let output_height = (output_lines as u16 + 2).min(left.height / 4).max(3);
|
||||
let [list_area, output_area, history_area] = Layout::vertical([
|
||||
let output_height = (output_lines as u16 + 2).min(left.height / 5).max(3);
|
||||
let stats_lines = self.selected_persisted_stats(app)
|
||||
.map(|s| s.by_tool.len())
|
||||
.unwrap_or(0);
|
||||
let stats_height = (stats_lines as u16 + 2).min(left.height / 5).max(3);
|
||||
let [list_area, output_area, stats_area, history_area] = Layout::vertical([
|
||||
Constraint::Length(list_height),
|
||||
Constraint::Length(output_height),
|
||||
Constraint::Length(stats_height),
|
||||
Constraint::Min(5),
|
||||
]).areas(left);
|
||||
|
||||
self.draw_list(frame, list_area, app);
|
||||
self.draw_outputs(frame, output_area, app);
|
||||
self.draw_stats(frame, stats_area, app);
|
||||
self.draw_history(frame, history_area, app);
|
||||
self.draw_context(frame, right, &context_sections, app);
|
||||
}
|
||||
|
|
@ -147,6 +162,7 @@ impl SubconsciousScreen {
|
|||
self.output_tree = SectionTree::new();
|
||||
self.context_tree = SectionTree::new();
|
||||
self.history_scroll = super::scroll_pane::ScrollPaneState::new();
|
||||
self.stats_scroll = super::scroll_pane::ScrollPaneState::new();
|
||||
}
|
||||
|
||||
/// Get the agent Arc for the selected item, whether subconscious or unconscious.
|
||||
|
|
@ -175,6 +191,12 @@ impl SubconsciousScreen {
|
|||
.unwrap_or(&[])
|
||||
}
|
||||
|
||||
/// Get persisted stats for the selected agent.
|
||||
fn selected_persisted_stats(&self, app: &App) -> Option<crate::agent::oneshot::PersistedStats> {
|
||||
let name = self.selected_agent_name(app)?;
|
||||
Some(crate::agent::oneshot::get_stats(&name))
|
||||
}
|
||||
|
||||
fn output_sections(&self, app: &App) -> Vec<SectionView> {
|
||||
let snap = match app.agent_state.get(self.selected()) {
|
||||
Some(s) => s,
|
||||
|
|
@ -211,37 +233,39 @@ impl SubconsciousScreen {
|
|||
|
||||
fn draw_list(&mut self, frame: &mut Frame, area: Rect, app: &App) {
|
||||
let mut items: Vec<ListItem> = app.agent_state.iter().map(|snap| {
|
||||
if !snap.enabled {
|
||||
ListItem::from(Line::from(vec![
|
||||
Span::styled(&snap.name, Style::default().fg(Color::DarkGray)),
|
||||
Span::styled(" ○ off", Style::default().fg(Color::DarkGray)),
|
||||
]))
|
||||
let (name_color, indicator) = if !snap.enabled {
|
||||
(Color::DarkGray, "○")
|
||||
} else if snap.running {
|
||||
ListItem::from(Line::from(vec![
|
||||
Span::styled(&snap.name, Style::default().fg(Color::Green)),
|
||||
Span::styled(" ● ", Style::default().fg(Color::Green)),
|
||||
Span::styled(
|
||||
format!("p:{} t:{}", snap.current_phase, snap.turn),
|
||||
Style::default().fg(Color::DarkGray),
|
||||
),
|
||||
]))
|
||||
(Color::Green, "●")
|
||||
} else {
|
||||
(Color::Gray, "○")
|
||||
};
|
||||
let ago = snap.last_run_secs_ago
|
||||
.map(|s| format_age(s))
|
||||
.unwrap_or_else(|| "—".to_string());
|
||||
let entries = snap.forked_agent.as_ref()
|
||||
.and_then(|a| a.context.try_lock().ok())
|
||||
.map(|ctx| ctx.conversation().len().saturating_sub(snap.fork_point))
|
||||
.unwrap_or(0);
|
||||
let detail = if snap.running {
|
||||
format!("p:{} t:{}", snap.current_phase, snap.turn)
|
||||
} else if !snap.enabled {
|
||||
"off".to_string()
|
||||
} else if let Some(ref stats) = snap.last_stats {
|
||||
let fail_str = if stats.tool_failures > 0 {
|
||||
format!(" {}fail", stats.tool_failures)
|
||||
} else {
|
||||
String::new()
|
||||
};
|
||||
format!("×{} {} {}tc{} avg:{:.1}",
|
||||
snap.runs, ago,
|
||||
stats.tool_calls, fail_str,
|
||||
snap.tool_calls_ewma)
|
||||
} else {
|
||||
format!("×{} {}", snap.runs, ago)
|
||||
};
|
||||
ListItem::from(Line::from(vec![
|
||||
Span::styled(&snap.name, Style::default().fg(Color::Gray)),
|
||||
Span::styled(" ○ ", Style::default().fg(Color::DarkGray)),
|
||||
Span::styled(
|
||||
format!("{} {}e", ago, entries),
|
||||
Style::default().fg(Color::DarkGray),
|
||||
),
|
||||
Span::styled(&snap.name, Style::default().fg(name_color)),
|
||||
Span::styled(format!(" {} ", indicator),
|
||||
Style::default().fg(if snap.running { Color::Green } else { Color::DarkGray })),
|
||||
Span::styled(detail, Style::default().fg(Color::DarkGray)),
|
||||
]))
|
||||
}
|
||||
}).collect();
|
||||
|
||||
// Unconscious agents (graph maintenance)
|
||||
|
|
@ -266,9 +290,15 @@ impl SubconsciousScreen {
|
|||
} else if !snap.enabled {
|
||||
"off".to_string()
|
||||
} else if let Some(ref stats) = snap.last_stats {
|
||||
format!("×{} {} {}msg {}tc",
|
||||
let fail_str = if stats.tool_failures > 0 {
|
||||
format!(" {}fail", stats.tool_failures)
|
||||
} else {
|
||||
String::new()
|
||||
};
|
||||
format!("×{} {} {}tc{} avg:{:.1}",
|
||||
snap.runs, ago,
|
||||
stats.messages, stats.tool_calls)
|
||||
stats.tool_calls, fail_str,
|
||||
snap.tool_calls_ewma)
|
||||
} else {
|
||||
format!("×{} {}", snap.runs, ago)
|
||||
};
|
||||
|
|
@ -316,6 +346,67 @@ impl SubconsciousScreen {
|
|||
frame.render_stateful_widget(widget, area, &mut self.output_tree.scroll);
|
||||
}
|
||||
|
||||
fn draw_stats(&mut self, frame: &mut Frame, area: Rect, app: &App) {
|
||||
let dim = Style::default().fg(Color::DarkGray);
|
||||
let header_style = Style::default().fg(Color::DarkGray);
|
||||
let name_style = Style::default().fg(Color::Cyan);
|
||||
let num_style = Style::default().fg(Color::Yellow);
|
||||
|
||||
let mut lines: Vec<Line> = Vec::new();
|
||||
|
||||
if let Some(stats) = self.selected_persisted_stats(app) {
|
||||
if !stats.by_tool.is_empty() {
|
||||
// Header
|
||||
lines.push(Line::from(vec![
|
||||
Span::styled(" tool ", header_style),
|
||||
Span::styled("last ", header_style),
|
||||
Span::styled(" avg ", header_style),
|
||||
Span::styled("total", header_style),
|
||||
]));
|
||||
|
||||
// Sort by total descending
|
||||
let mut tools: Vec<_> = stats.by_tool.iter().collect();
|
||||
tools.sort_by(|a, b| b.1.total.cmp(&a.1.total));
|
||||
|
||||
for (name, tool_stats) in tools {
|
||||
let short_name = name.strip_prefix("memory_").unwrap_or(name);
|
||||
lines.push(Line::from(vec![
|
||||
Span::styled(format!(" {:<20} ", short_name), name_style),
|
||||
Span::styled(format!("{:>4} ", tool_stats.last), num_style),
|
||||
Span::styled(format!("{:>4.1} ", tool_stats.ewma), dim),
|
||||
Span::styled(format!("{:>5}", tool_stats.total), num_style),
|
||||
]));
|
||||
}
|
||||
|
||||
// Failures row if any
|
||||
if stats.failures.total > 0 {
|
||||
lines.push(Line::raw(""));
|
||||
lines.push(Line::from(vec![
|
||||
Span::styled(" failures ", Style::default().fg(Color::Red)),
|
||||
Span::styled(format!("{:>4} ", stats.failures.last), num_style),
|
||||
Span::styled(format!("{:>4.1} ", stats.failures.ewma), dim),
|
||||
Span::styled(format!("{:>5}", stats.failures.total), num_style),
|
||||
]));
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
if lines.is_empty() {
|
||||
lines.push(Line::styled(" (no tool calls)", dim));
|
||||
}
|
||||
|
||||
let mut block = pane_block_focused("tool calls", self.focus == Pane::Stats);
|
||||
if self.focus == Pane::Stats {
|
||||
block = block.title_bottom(Line::styled(
|
||||
" ↑↓:scroll PgUp/Dn ",
|
||||
Style::default().fg(Color::DarkGray),
|
||||
));
|
||||
}
|
||||
let widget = super::scroll_pane::ScrollPane::new(&lines)
|
||||
.block(block);
|
||||
frame.render_stateful_widget(widget, area, &mut self.stats_scroll);
|
||||
}
|
||||
|
||||
fn draw_history(&mut self, frame: &mut Frame, area: Rect, app: &App) {
|
||||
let dim = Style::default().fg(Color::DarkGray);
|
||||
let key_style = Style::default().fg(Color::Yellow);
|
||||
|
|
|
|||
Loading…
Add table
Add a link
Reference in a new issue